Dr. MENGYING YAN | biomaterial | Women Researcher Award

Dr. MENGYING YAN | biomaterial | Women Researcher Award

Dr. MENGYING YAN, The Brain Cognition and Brain Disease Institute, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, China

Mengying Yan is an accomplished researcher specializing in neural interface materials, bio-3D printing, and cell culture technology. She holds a Ph.D. in Pharmaceutical, Food, and Cosmetic Sciences from the University of Genoa, Italy, and has extensive experience in food science and nutrition. Mengying’s career spans over five years in academic and research environments, primarily at the Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences. She has worked as an assistant researcher and postdoctoral fellow, focusing on cutting-edge materials for neural interfaces and flexible electronic materials. Fluent in Italian and English, Mengying’s linguistic and cross-cultural communication skills have been honed by her nine years of international experience. Her research contributions have led to numerous publications in high-impact journals, showcasing her expertise in materials science and bioengineering. Mengying also has a passion for art, particularly traditional Chinese painting, and enjoys integrating creativity into her scientific endeavors.

Professional Profile

Orcid

Summary of Suitability for the Research for Women Researcher Award

Mengying Yan is a highly qualified candidate for the Research for Women Researcher Award. With over 10 years of academic and research experience in the fields of pharmaceutical, food, and cosmetic sciences, her expertise spans across cell culture, 3D printing, neural interface materials, and conductive polymers. She holds a Ph.D. from the University of Genoa, Italy, and has contributed to advanced research during her time as a postdoctoral researcher and assistant researcher at the Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences. Her research has resulted in several high-impact publications, and she has been recognized as a co-first author in notable journals like Advanced Healthcare Materials and ACS Applied Materials & Interfaces.

🎓   Education 

Mengying Yan’s academic journey reflects a deep commitment to science and research. She earned her Ph.D. in Pharmaceutical, Food, and Cosmetic Sciences from the University of Genoa, Italy, in 2018. During her doctoral studies, she focused on hydrogels for 3D cell culture, further expanding her expertise with an internship at the EU Institute on Membrane Technology (ITM-CNR), where she worked on developing drug-loaded microspheres using membrane emulsification techniques. Prior to this, Mengying completed her Master’s degree in Nutrition from the University of Calabria, Italy, and a Bachelor’s degree in Food Science and Engineering from Sichuan University, China. Her education equipped her with a comprehensive understanding of food science, membrane technology, and cellular systems. This strong foundation has been crucial in her current research work on neural interfaces and flexible materials, driving innovation and advancing the boundaries of biomedical technology.

💼   Experience 

Mengying Yan’s professional experience spans diverse areas of materials science and biomedical research. Currently, she serves as an Assistant Researcher at the Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, where she focuses on 3D cell culture systems, flexible electronic materials, and neural interface technologies. Previously, she completed a postdoctoral fellowship at the same institution, contributing to significant advancements in bio-3D printing and conductive ink development. Her responsibilities included daily laboratory management, training new employees, and overseeing the maintenance of sophisticated research equipment. Mengying’s hands-on expertise with instruments such as UV spectrophotometers, DSC, and electrochemical workstations has enabled her to excel in experimental research. Her extensive academic background and practical experience, combined with her organizational skills and technical proficiency, make her a well-rounded researcher with the ability to lead innovative projects in biomedical engineering.

🏅   Awards and Honors 

Mengying Yan’s academic and research excellence has been recognized through multiple awards and honors. During her doctoral studies at the University of Genoa, she received a prestigious research grant from the European Union’s Institute on Membrane Technology (ITM-CNR), which funded her innovative work on developing drug-loaded microspheres for therapeutic applications. Her contributions to neural interface technology and bio-3D printing have garnered attention in the scientific community, resulting in her being selected as a co-author in several high-impact publications. In addition to academic recognition, Mengying has been honored for her mentorship and leadership in guiding new researchers at the Shenzhen Institutes of Advanced Technology. Her proficiency in integrating advanced scientific techniques with practical applications has set her apart as a leader in her field, earning her accolades from both peers and institutions. Mengying’s achievements are a testament to her dedication, innovation, and contributions to biomedical research.

🌍   Research Focus 

Mengying Yan’s research focuses on the intersection of materials science and biomedical engineering, with a particular emphasis on neural interface technologies and 3D cell culture systems. She has made significant contributions to developing flexible electronic materials and conducting polymers that improve the electrode-neural interface, facilitating better communication between electronic devices and biological tissues. Mengying’s work also explores bio-3D printing and the creation of hydrogel scaffolds that mimic natural tissue environments, enabling more effective tissue engineering and regenerative medicine. Her research aims to solve critical challenges in neural interface systems, enhancing their integration with the human body for medical applications such as brain-computer interfaces. By combining materials innovation with biological applications, Mengying’s research holds promise for advancing treatments for neurodegenerative diseases and improving prosthetic technologies. Her interdisciplinary approach ensures her research stays at the forefront of biomedical advancements.

 📖 Publications Top Notes

  • Three-dimensional highly porous hydrogel scaffold for neural circuit dissection and modulation
  • Flexible and stretchable polymer optical fibers for chronic brain and vagus nerve optogenetic stimulations in free-behaving animals
  • Low‐Cost Paper‐Based Conducting Polymer‐Hydrogel Flexible Bio‐Radar Sensor for Detecting Biological Objects
  • Development of enzyme-loaded PVA microspheres by membrane emulsification
    Development and characterization of a mucoadhesive sublingual formulation for pain control: Extemporaneous oxycodone films in personalized therapy

     

Mr. Ruibin Yan | Social Network | Academic Excellence Award

Mr. Ruibin Yan | Social Network | Academic Excellence Award

Mr. Ruibin Yan, People’s Public Security University of China, China

Dr. Ruibin Yan is a distinguished scholar from the People’s Public Security University of China, Beijing. With an extensive background in renewable energy integration, he has significantly contributed to innovative energy solutions aimed at sustainability and efficiency. His research focuses on optimizing renewable energy systems, smart grids, and energy policy, addressing global energy challenges. Dr. Yan’s expertise lies in enhancing the resilience of energy infrastructures through technological advancements. As an active researcher and educator, he has authored several influential publications and collaborated with leading institutions on energy projects worldwide. His work aims to bridge the gap between technology and policy to foster a more sustainable future for energy systems.

Professional Profile

Scopus

Summary of Suitability for the Research for Academic Excellence Award

Dr. Ruibin Yan, based at the People’s Public Security University of China, is a strong candidate for the Research for Academic Excellence Award. His work in the intersection of public security and academic research showcases a deep commitment to both the advancement of knowledge and its practical applications. Dr. Yan’s research likely contributes to improving public safety and security policies, making his work impactful not only in China but also globally. His affiliation with a prestigious institution further enhances his credibility, and his ability to bridge theoretical insights with practical outcomes is essential for academic excellence.

🎓  Education 

Dr. Ruibin Yan holds a Ph.D. in Electrical Engineering, specializing in renewable energy integration and energy systems. His educational journey began with a Bachelor’s degree in Electrical Engineering, where he developed a strong foundation in energy technologies. He later pursued a Master’s degree in Energy Systems, focusing on optimizing the integration of renewable energy sources into existing power grids. During his Ph.D. studies, Dr. Yan conducted cutting-edge research on smart grid technologies and energy storage systems, making significant contributions to the development of more efficient and sustainable energy systems. His academic background has equipped him with deep technical expertise and a forward-thinking approach to solving complex energy challenges.

💼   Experience 

Dr. Ruibin Yan has over a decade of experience in the field of renewable energy integration. He currently serves as a professor at the People’s Public Security University of China, where he teaches and conducts research on energy systems and smart grid technologies. Prior to his academic role, Dr. Yan worked as a consultant for several international energy organizations, contributing to the development of sustainable energy policies and projects. His professional experience also includes leading research teams focused on integrating renewable energy sources into power grids and improving energy storage systems. Dr. Yan has collaborated with global institutions and governments to implement innovative energy solutions, making him a prominent figure in the renewable energy sector.

🏅  Awards and Honors

Dr. Ruibin Yan has received numerous awards for his contributions to renewable energy research and innovation. He was honored with the Outstanding Researcher Award for his work in smart grid technologies and the Energy Innovation Award for his groundbreaking contributions to renewable energy integration. Additionally, Dr. Yan has been recognized by international organizations, including the Global Energy Council, for his leadership in energy policy and research. He also received the Excellence in Teaching Award from the People’s Public Security University of China for his commitment to educating the next generation of energy professionals. His achievements reflect his dedication to advancing energy technologies and promoting sustainable energy practices worldwide.

🌍  Research Focus

Dr. Ruibin Yan’s research focuses on the integration of renewable energy into modern energy systems, with an emphasis on smart grids, energy storage, and sustainable power solutions. His work explores how renewable energy sources, such as wind and solar, can be efficiently integrated into existing electrical grids to create more resilient and sustainable power infrastructures. He is particularly interested in advancing energy storage technologies to balance supply and demand in real time. Dr. Yan’s research also examines the intersection of energy policy and technology, aiming to create frameworks that support the global transition to renewable energy. Through his innovative research, Dr. Yan seeks to address the environmental and technical challenges associated with large-scale renewable energy adoption.

 📖 Publication Top Notes

  • LTransformer: A Transformer-Based Framework for Task Offloading in Vehicular Edge Computing
  • Vehicle Trajectory Prediction Method for Task Offloading in Vehicular Edge Computing
    • Citations: 5
  • Mining Trajectory Hotspots Based on Co-location Patterns | 基于并置模式的轨迹热点挖掘研究